Showing 1,281 - 1,300 results of 30,730 for search '(( 50 ((we decrease) OR (((a decrease) OR (mean decrease)))) ) OR ( 2 step decrease ))', query time: 0.89s Refine Results
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    Fig 7 - by Giulia Comunale (11570819)

    Published 2021
    Subjects:
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    Unravelling CO Activation on Flat and Stepped Co Surfaces: A Molecular Orbital Analysis by Rozemarijn D.E. Krösschell (18604265)

    Published 2024
    “…The most important descriptors for activation of the C–O bond are the decrease in electron density in CO’s 1π orbital , the occupation of 2π anti-bonding orbitals and the redistribution of electrons in the 3σ orbital. …”
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    Loss of cytoplasmic incompatibility in <i>Wolbachia</i>-infected <i>Aedes aegypti</i> under field conditions by Perran A. Ross (844275)

    Published 2019
    “…To investigate the critical temperature range for the loss of <i>Wolbachia</i> infections, we held <i>Ae</i>. <i>aegypti</i> eggs in thermocyclers for one week at a range of cyclical temperatures. …”
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    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
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    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
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    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”
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    Supramolecular DNA Photonic Hydrogels for On-Demand Control of Coloration with High Spatial and Temporal Resolution by Yixiao Dong (2174902)

    Published 2021
    “…We solve this problem by creating a DNA hydrogel system that shows a 50 000-fold decrease in modulus upon heating by ∼10 °C. …”